4.5 Article

Numerical simulation of solitary waves overtopping on a sloping sea dike using a particle method

Journal

WAVE MOTION
Volume 95, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.wavemoti.2020.102535

Keywords

Particle method; Solitary waves overtopping; Slope approximation; Run-down motion; Hydraulic jump

Funding

  1. National Key Research and Development Program of China [2018YFC0407501]
  2. National Natural Science Foundation of China [51479056]

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Sea dikes, as a commonly used type of coastal protection structures, are often attacked or damaged by violent waves overtopping under tsunamis and storm surges. In this study, the behavior of solitary waves traveling on a sloping sea dike is simulated, and solitary wave overtopping characteristics are analyzed using a complete Lagrangian numerical method, the moving particle semi-implicit (MPS) method. To better describe the complicated fluid motions during the wave overtopping process, the original MPS method is modified by introducing a new free surface detection method, i.e., the area filling rate identification method, and a modified gradient operator to provide higher precision. Meanwhile, the approximation method for sloping boundaries in particle methods is enhanced, and a smooth slope approximation method is proposed and recommended. To verify the improved MPS method, a solitary wave traveling over a steep sloping bed is studied. The entire solitary wave run-up and run-down processes and exquisite water movements are reproduced well by the present method, and are consistent with the corresponding experimental results. Subsequently, the improved MPS method is applied to investigate the overtopping process of a single solitary wave over a sloping sea dike. The results show that the hydraulic jump phenomenon is also possible to occur during the run-down motion of the solitary wave overtopping. Finally, the characteristics of the propagation and overtopping of two successive solitary waves on a sloping sea dike are discussed. The result manifests that the interaction between adjacent solitary waves affects wave overtopping patterns and overtopping velocities. (C) 2020 Elsevier B.V. All rights reserved.

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